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通过水热生长的TiO₂涂层的UVB光功能化增强钛植入物上的骨生成。

Enhanced osteogenesis on titanium implants by UVB photofunctionalization of hydrothermally grown TiO₂ coatings.

作者信息

Lorenzetti Martina, Dakischew Olga, Trinkaus Katja, Lips Katrin Susanne, Schnettler Reinhard, Kobe Spomenka, Novak Saša

机构信息

Department of Nanostructured Materials, Jožef Stefan Institute, Ljubljana, Slovenia Jožef Stefan International Postgraduate School, Ljubljana, Slovenia

Laboratory for Experimental Trauma Surgery, Justus-Liebig-University Giessen, Giessen, Germany.

出版信息

J Biomater Appl. 2015 Jul;30(1):71-84. doi: 10.1177/0885328215569091. Epub 2015 Jan 28.

Abstract

Even though Ti-based implants are the most used materials for hard tissue replacement, they may present lack of osseointegration on the long term, due to their inertness. Hydrothermal treatment (HT) is a useful technique for the synthesis of firmly attached, highly crystalline coatings made of anatase titanium dioxide (TiO2), providing favorable nanoroughness and higher exposed surface area, as well as greater hydrophilicity, compared to the native amorphous oxide on pristine titanium. The hydrophilicity drops even more by photofunctionalization of the nanostructured TiO2-anatase coatings under UV light. Human mesenchymal stem cells exhibited a good response to the combination of the positive surface characteristics, especially in respect to the UVB pre-irradiation. The results showed that the cells were not harmed in terms of viability; even more, they were encouraged to differentiate in osteoblasts and to become osteogenically active, as confirmed by the calcium ion uptake and the formation of well-mineralized, bone-like nodule structures. In addition, the enrichment of hydroxyl groups on the HT-surfaces by UVB photofunctionalization accelerated the cell differentiation process and greatly improved the osteogenesis in comparison with the nonirradiated samples. The optimal surface characteristics of the HT-anatase coatings as well as the high potentiality of the photo-induced hydrophilicity, which was reached during a relatively short pre-irradiation time (5 h) with UVB light, can be correlated with better osseointegration ability in vivo; among the samples, the superior biological behavior of the roughest and most hydrophilic HT coating makes it a good candidate for further studies and applications.

摘要

尽管钛基植入物是用于硬组织替代的最常用材料,但由于其惰性,长期来看可能存在骨整合不足的问题。水热处理(HT)是一种用于合成由锐钛矿型二氧化钛(TiO₂)制成的牢固附着、高度结晶涂层的有用技术,与原始钛上的天然无定形氧化物相比,它具有良好的纳米粗糙度、更大的暴露表面积以及更高的亲水性。在紫外光下对纳米结构的TiO₂ - 锐钛矿涂层进行光功能化处理后,亲水性会进一步下降。人骨髓间充质干细胞对这些积极的表面特性组合表现出良好的反应,特别是在UVB预辐照方面。结果表明,细胞的活力没有受到损害;更重要的是,它们被促进分化为成骨细胞并变得具有成骨活性,这通过钙离子摄取以及形成矿化良好的骨样结节结构得到证实。此外,与未辐照的样品相比,通过UVB光功能化在HT表面富集羟基加速了细胞分化过程并极大地改善了成骨作用。HT - 锐钛矿涂层的最佳表面特性以及在相对较短的UVB预辐照时间(5小时)内达到的光诱导亲水性的高潜力,可以与体内更好的骨整合能力相关联;在这些样品中,最粗糙且亲水性最强的HT涂层的卓越生物学行为使其成为进一步研究和应用的良好候选材料。

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